Geometrical-optics analysis of the interaction between light and gravitational waves from binaries

Fuente: arXiv
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Autore principale: Kim, Dong-Hoon
Natura: Preprint
Pubblicazione: 2024
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author Kim, Dong-Hoon
author_facet Kim, Dong-Hoon
contents We consider a situation in which light emitted from the neighborhood of a binary interacts with gravitational waves from the binary (e.g., a supermassive black hole binary in a quasar, a binary pulsar, etc.). The effect is cumulative over the long path lengths of light propagation and might be appreciable if the interaction initially takes place close to the source of gravitational waves, where the strain amplitude can be large. This situation can be modeled effectively using spherical gravitational waves (i.e., transverse-traceless radially propagating waves), with the strain amplitude varying with the distance from the source to a field point where the two wavefronts of light and gravitational waves meet each other. Our analysis employs geometrical-optics methods in curved spacetime, where the curvature is due to gravitational waves propagating in a flat spacetime background. We place a particular focus on the effect of gravitational Faraday rotation (or Skrotskii/Rytov effect) resulting from the interaction between light and gravitational waves from binaries.
format Preprint
id arxiv_https___arxiv_org_abs_2411_09024
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Geometrical-optics analysis of the interaction between light and gravitational waves from binaries
Kim, Dong-Hoon
General Relativity and Quantum Cosmology
We consider a situation in which light emitted from the neighborhood of a binary interacts with gravitational waves from the binary (e.g., a supermassive black hole binary in a quasar, a binary pulsar, etc.). The effect is cumulative over the long path lengths of light propagation and might be appreciable if the interaction initially takes place close to the source of gravitational waves, where the strain amplitude can be large. This situation can be modeled effectively using spherical gravitational waves (i.e., transverse-traceless radially propagating waves), with the strain amplitude varying with the distance from the source to a field point where the two wavefronts of light and gravitational waves meet each other. Our analysis employs geometrical-optics methods in curved spacetime, where the curvature is due to gravitational waves propagating in a flat spacetime background. We place a particular focus on the effect of gravitational Faraday rotation (or Skrotskii/Rytov effect) resulting from the interaction between light and gravitational waves from binaries.
title Geometrical-optics analysis of the interaction between light and gravitational waves from binaries
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2411.09024